Literature DB >> 29016427

Comparison of Intended Lengthening of Magnetically Controlled Growing Rods: Ultrasound Versus X-Ray.

Mutlu Cobanoglu1,2, Suken A Shah1, Peter Gabos1, Kenneth Rogers1, Petya Yorgova1, Geraldine Neiss1, Leslie Grissom1, William G Mackenzie1.   

Abstract

BACKGROUND: In the treatment of early onset scoliosis (EOS), there has been a trend to use magnetically controlled growing rods (MCGR) in order to reduce the number of surgeries. To confirm the amount of lengthening, spine radiographs were required. Recently, ultrasound (US) has been added to monitor lengthening of MCGR to avoid radiation exposure. Our aim was to determine whether US is as accurate as plain radiography (x-ray) in determining the amount of length achieved at individual MCGR lengthening episodes.
METHODS: Retrospective study; inclusion criteria: EOS cases with dual MCGR with minimum 12 months follow-up. Intended lengthening IL (mm), lengthening on US (mm) and x-ray (mm) were documented from medical records for both right and left rods. Primary (no surgery before MCGR) and conversion (other types of instrumentation were replaced with MCGR) cases were reviewed separately. P-values determined with analysis of variance.
RESULTS: Sixteen cases with 100 lengthening episodes met the inclusion criteria. Eleven were primary MCGR cases with 67 episodes. Mean follow-up was 19±5 months. Significant differences were found between IL (3.4±1 mm), US (2.7±1.9 mm), and x-ray (4.1±2.2 mm) (P<0.001). The difference between IL and x-ray was minimal, but statistically significant (P=0.046). US showed statistically lower values than both IL (P=0.001) and x-ray (P<0.001). The mean ratio of x-ray/IL, US/IL, and US/x-ray were 1.1, 0.75, and 0.84, respectively. Five conversion cases had 33 episodes. Mean follow-up was 21±2 months. Significant differences were found between IL (3.4±0.8 mm), US (1.3±0.8 mm), and x-ray (1.7±0.9 mm) (P<0.001) but there was no significant difference between US and x-ray (P=0.283). IL was significantly higher than both US (P< 0.001) and x-ray (P<0.001). The mean ratio of x-ray/IL, US/IL, and US/x-ray were 0.64, 0.41, and 1.1, respectively.
CONCLUSIONS: US can provide confirmatory information of noninvasive lengthening of MCGR. However, US tended to underestimate the achieved length as measured by x-ray in primary cases. Conversion cases demonstrate better concordance between US and x-ray but in these cases less overall length was achieved at each lengthening episode. LEVEL OF EVIDENCE: Level III.

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Year:  2019        PMID: 29016427     DOI: 10.1097/BPO.0000000000001072

Source DB:  PubMed          Journal:  J Pediatr Orthop        ISSN: 0271-6798            Impact factor:   2.324


  5 in total

1.  Does the external remote controller's reading correspond to the actual lengthening in magnetic-controlled growing rods?

Authors:  Kar Hao Teoh; Abdul Nazeer Moideen; Kausik Mukherjee; Sridhar Kamath; Stuart H James; Alwyn Jones; John Howes; Paul R Davies; Sashin Ahuja
Journal:  Eur Spine J       Date:  2020-02-25       Impact factor: 3.134

2.  How frequent should the radiographic examination be to monitor magnetically controlled growing rods? A retrospective look two to seven years postoperatively.

Authors:  Altug Yucekul; Hatice Tanriover; Kadir Abul; Ashfaq Ahmed; Tais Zulemyan; Caglar Yilgor; Ahmet Alanay
Journal:  Eur Spine J       Date:  2021-02-08       Impact factor: 3.134

3.  Magnetically Controlled Growing Rods: The Experience of Mechanical Failure from a Single Center Consecutive Series of 28 Children with a Minimum Follow-up of 2 Years.

Authors:  Alastair Beaven; Adrian C Gardner; David S Marks; Jwalant S Mehta; Matthew Newton-Ede; Jonathan B Spilsbury
Journal:  Asian Spine J       Date:  2018-09-10

4.  The first magnetically controlled growing rod (MCGR) in the world - lessons learned and how the identified complications helped to develop the implant in the past decade: case report.

Authors:  Jason Pui Yin Cheung; Kam Yim Sze; Kenneth Man Chee Cheung; Teng Zhang
Journal:  BMC Musculoskelet Disord       Date:  2021-04-01       Impact factor: 2.362

5.  "Law of Temporary Diminishing Distraction Gains": The Phenomenon of Temporary Diminished Distraction Lengths With Magnetically Controlled Growing Rods That Is Reverted With Rod Exchange.

Authors:  Jason Pui Yin Cheung; Cora Bow; Kenneth M C Cheung
Journal:  Global Spine J       Date:  2020-08-17
  5 in total

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